ANALYSES OF LINKAGE TO 17Q11-Q23 IN 3 FRENCH HEREDITARY NONPOLYPOSIS COLON-CANCER FAMILIES
INTERNATIONAL JOURNAL OF ONCOLOGY
Authors: BERNARDGALLON, D; GOSSE, S; ESSIOUX, L; LAURENTPUIG, P; RALLIERE, C; CURE, H; BAY, JO; SCHRAUB, S; BONAITIPELLIE, C; SOBOL, H; BIGNON, YJ
Abstract
Hereditary non-polyposis colorectal cancer (HNPCC) is an autosomal dominant disease, accounting for approximately 6% of colorectal cancers. We performed linkage analyses with the aim of proving or excluding the existence of a susceptibility locus on 17q. Three HNPCC families (102 collected members, 25 colorectal cancers, 9 other cancers and 6 colorectal adenomas) were studied with 7 polymorphic DNA markers Mfd15, THRA 1, D17S800, D17S855, Mfd 188, 42D6, 46E6 localized in the 17q11-q23 region. After in vitro enzymatic amplification, the different alleles were separated by classic vertical poly-acrylamide gel electrophoresis or analyzed with the automatic sequencing machine 373A (Applied Biosystems). Results showed that none of the 7 studied markers of the chromosome 17q were linked to the HNPCC disease.
Identification of organ-autonomous constituents of the molecular memory conferred by thyroid hormone exposure in cold temperature-arrested metamorphosing Rana (Lithobates) catesbeiana tadpoles
COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY D-GENOMICS & PROTEOMICS
Authors: Hammond, S. Austin; Jackman, Kevin W.; Partovi, Shireen H.; Veldhoen, Nik; Helbing, Caren C.
Abstract
Environmental temperature modulates thyroid hormone (TH)-dependent metamorphosis in some amphibian species. The North American bullfrog - Rana (Lithobates) catesbeiana - tadpole is naturally adapted to a wide range of temperatures over multiple seasons. Cold temperatures delay while warmer temperatures accelerate metamorphosis. Exogenous TH exposure of premetamorphic tadpoles results in a rapid precocious induction of metamorphosis at warm temperatures (20-25 degrees C). The same exposure at cold temperatures (4-5 degrees C) does not elicit an overt metamorphic response. However, a molecular memory of TH exposure is established such that cold, TH-exposed tadpoles returned to permissive warm temperatures will rapidly execute TH-induced genetic programs. Previous mRNA profiling has identified TH-regulated transcription factors encoded by thra, thrb, thibz, klf9, and cebp1 as components of the molecular memory after one week post-exposure. However, a further hierarchy may exist within the initiation phase since many gene transcripts demonstrated tissue-specific patterns. Whether the molecular memory is organ autonomous or requires additional modulating factors is unknown. Herein we examine tail fin and back skin and determine that thibz is the only transcript that is TH-responsive after 2 days post-exposure at low temperature in both tissues in the intact animal. In back skin, cebpl is also TH-responsive under these conditions. Serum-free tail fin organ culture (C-Fin) reveals that the thibz response is organ autonomous whereas cultured back skin (C-Skin) results suggest that thibz and cebpl require an additional factor for induction from elsewhere within the intact animal. Subsequent investigations are now possible to identify endogenous factors that modulate the molecular memory in intact animals. (C) 2016 Elsevier Inc. All rights reserved.